Sasaki Mari, Takagi Masahiro, Okamura Yasushi
Section of Developmental Neurophysiology, Okazaki Institute for Integrative Bioscience, Higashiyama 5-1, Myodaiji-cho, Okazaki, Aichi 444-8787, Japan.
Science. 2006 Apr 28;312(5773):589-92. doi: 10.1126/science.1122352. Epub 2006 Mar 23.
Voltage-gated proton channels have been widely observed but have not been identified at a molecular level. Here we report that a four-transmembrane protein similar to the voltage-sensor domain of voltage-gated ion channels is a voltage-gated proton channel. Cells overexpressing this protein showed depolarization-induced outward currents accompanied by tail currents. Current reversal occured at equilibrium potentials for protons. The currents exhibited pH-dependent gating and zinc ion sensitivity, two features which are characteristic of voltage-gated proton channels. Responses of voltage dependence to sequence changes suggest that mouse voltage-sensor domain-only protein is itself a channel, rather than a regulator of another channel protein.
电压门控质子通道已被广泛观察到,但尚未在分子水平上得到鉴定。在此我们报告,一种类似于电压门控离子通道电压感受器结构域的四跨膜蛋白是一种电压门控质子通道。过表达这种蛋白的细胞表现出去极化诱导的外向电流并伴有尾电流。电流反转发生在质子的平衡电位处。这些电流表现出pH依赖性门控和锌离子敏感性,这是电压门控质子通道的两个特征。电压依赖性对序列变化的反应表明,小鼠仅含电压感受器结构域的蛋白本身就是一个通道,而不是另一种通道蛋白的调节剂。